Microneedles as a Promising Technology for Disease Monitoring and Drug Delivery: A Review

被引:0
|
作者
Shivaswamy, Rashmi Hulimane [1 ]
Binulal, Pranav [1 ]
Benoy, Aloysious [1 ]
Lakshmiramanan, Kaushik [1 ]
Bhaskar, Nitu [1 ]
Pandya, Hardik Jeetendra [1 ]
机构
[1] Indian Inst Sci, Dept Elect Syst Engn, Bangalore 560012, India
来源
ACS MATERIALS AU | 2024年 / 5卷 / 01期
基金
英国惠康基金;
关键词
microneedles; drug delivery; piezoelectricmaterial; microneedle patch; disease monitoring; clinical trial; controlled release; therapeutics; DISSOLVING MICRONEEDLES; TRANSDERMAL DELIVERY; SKIN PENETRATION; DESIGN; FABRICATION; PATCH; ARRAY; DEVICE; GEOMETRY; GLUCOSE;
D O I
10.1021/acsmaterialsau.4c00125
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The delivery of molecules, such as DNA, RNA, peptides, and certain hydrophilic drugs, across the epidermal barrier poses a significant obstacle. Microneedle technology has emerged as a prominent area of focus in biomedical research because of its ability to deliver a wide range of biomolecules, vaccines, medicines, and other substances through the skin. Microneedles (MNs) form microchannels by disrupting the skin's structure, which compromises its barrier function, and facilitating the easy penetration of drugs into the skin. These devices enhance the administration of many therapeutic substances to the skin, enhancing their stability. Transcutaneous delivery of medications using a microneedle patch offers advantages over conventional drug administration methods. Microneedles containing active substances can be stimulated by different internal and external factors to result in the regulated release of the substances. To achieve efficient drug administration to the desired location, it is necessary to consider the design of needles with appropriate optimized characteristics. The choice of materials for developing and manufacturing these devices is vital in determining the pharmacodynamics and pharmacokinetics of drug delivery. This article provides the most recent update and overview of the numerous microneedle systems that utilize different activators to stimulate the release of active components from the microneedles. Further, it discusses the materials utilized for producing microneedles and the design strategies important in managing the release of drugs. An explanation of the commonly employed fabrication techniques in biomedical applications and electronics, particularly for integrated microneedle drug delivery systems, is discussed. To successfully implement microneedle technology in clinical settings, it is essential to comprehensively assess several factors, such as biocompatibility, drug stability, safety, and production cost. Finally, an in-depth review of these criteria and the difficulties and potential future direction of microneedles in delivering drugs and monitoring diseases is explored.
引用
收藏
页码:115 / 140
页数:26
相关论文
共 50 条
  • [31] Fabrication and testing analysis of tapered silicon microneedles for drug delivery applications
    Yan, Xiao-Xiao
    Liu, Jing-Quan
    Jiang, Shui-Dong
    Yang, Bin
    Yang, Chun-Sheng
    MICROELECTRONIC ENGINEERING, 2013, 111 : 33 - 38
  • [32] Recent advances of microneedles used towards stimuli-responsive drug delivery, disease theranostics, and bioinspired applications
    Yang, Jingbo
    Zhang, Haoxiang
    Hu, Tianli
    Xu, Chenjie
    Jiang, Lelun
    Zhang, Yu Shrike
    Xie, Maobin
    CHEMICAL ENGINEERING JOURNAL, 2021, 426
  • [33] Dissolving microneedles for transdermal drug delivery: Advances and challenges
    Ita, Kevin
    BIOMEDICINE & PHARMACOTHERAPY, 2017, 93 : 1116 - 1127
  • [34] Multifunctional Hydrogel Microneedles (HMNs) in Drug Delivery and Diagnostics
    Omidian, Hossein
    Chowdhury, Sumana Dey
    GELS, 2025, 11 (03)
  • [35] Fabrication and testing of polymer microneedles for transdermal drug delivery
    Ebrahiminejad, Vahid
    Rad, Zahra Faraji
    Prewett, Philip D.
    Davies, Graham J.
    BEILSTEIN JOURNAL OF NANOTECHNOLOGY, 2022, 13 : 629 - 640
  • [36] Transdermal drug delivery via microneedles for musculoskeletal systems
    Zheng, Haibin
    Xie, Xuankun
    Ling, Haocong
    You, Xintong
    Liang, Siyu
    Lin, Rurong
    Qiu, Renjie
    Hou, Honghao
    JOURNAL OF MATERIALS CHEMISTRY B, 2023, 11 (35) : 8327 - 8346
  • [37] Recent advances in microneedles for drug delivery and theranostic application
    Gupta, Mayuri
    Srivastava, Nimisha
    Rai, A. K.
    Kathuria, Himanshu
    EUROPEAN POLYMER JOURNAL, 2025, 228
  • [38] Mathematical Modelling, Simulation and Optimisation of Microneedles for Transdermal Drug Delivery: Trends and Progress
    Yadav, Prateek Ranjan
    Han, Tao
    Olatunji, Ololade
    Pattanayek, Sudip K.
    Das, Diganta Bhusan
    PHARMACEUTICS, 2020, 12 (08) : 1 - 31
  • [39] Combination of lipid-based nanoparticles with microneedles as a promising strategy for enhanced transdermal delivery systems: A comprehensive review
    Gunawan, Maxius
    Bestari, Angi Nad
    Ramadon, Delly
    Efendi, Ahmad
    Boonkanokwong, Veerakiet
    JOURNAL OF DRUG DELIVERY SCIENCE AND TECHNOLOGY, 2025, 107
  • [40] Shape of dissolving microneedles determines skin penetration ability and efficacy of drug delivery
    Min, Hye Su
    Kim, Youseong
    Nam, Jeehye
    Ahn, Hyeri
    Kim, Minkyung
    Kang, Geonwoo
    Jang, Mingyu
    Yang, Huisuk
    Jung, Hyungil
    BIOMATERIALS ADVANCES, 2023, 145